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Cyclooxygenases microsomal prostaglandin E synthase-1 and cardiovascular function

机译:环氧合酶微粒体前列腺素E合酶1和心血管功能

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摘要

We investigated the mechanisms by which inhibitors of prostaglandin G/H synthase-2 (PGHS-2; known colloquially as COX-2) increase the incidence of myocardial infarction and stroke. These inhibitors are believed to exert both their beneficial and their adverse effects by suppression of PGHS-2–derived prostacyclin (PGI2) and PGE2. Therefore, the challenge remains to identify a mechanism whereby PGI2 and PGE2 expression can be suppressed while avoiding adverse cardiovascular events. Here, selective inhibition, knockout, or mutation of PGHS-2, or deletion of the receptor for PGHS-2–derived PGI2, was shown to accelerate thrombogenesis and elevate blood pressure in mice. These responses were attenuated by COX-1 knock down, which mimics the beneficial effects of low-dose aspirin. PGE2 biosynthesis is catalyzed by the coordinate actions of COX enzymes and microsomal PGE synthase-1 (mPGES-1). We show that deletion of mPGES-1 depressed PGE2 expression, augmented PGI2 expression, and had no effect on thromboxane biosynthesis in vivo. Most importantly, mPGES-1 deletion affected neither thrombogenesis nor blood pressure. These results suggest that inhibitors of mPGES-1 may retain their antiinflammatory efficacy by depressing PGE2, while avoiding the adverse cardiovascular consequences associated with PGHS-2–mediated PGI2 suppression.
机译:我们研究了前列腺素G / H合酶2(PGHS-2;俗称COX-2)抑制剂增加心肌梗塞和中风发生率的机制。据信这些抑制剂通过抑制PGHS-2衍生的前列环素(PGI2)和PGE2发挥其有益和不利作用。因此,挑战仍然是确定一种机制,从而可以在避免不良心血管事件的同时抑制PGI2和PGE2的表达。在这里,对PGHS-2的选择性抑制,敲除或突变,或PGHS-2衍生的PGI2受体的缺失被证明可加速血栓形成并提高小鼠血压。这些反应被COX-1敲除减弱,模仿了小剂量阿司匹林的有益作用。 PGE2的生物合成是由COX酶和微粒体PGE合酶1(mPGES-1)的协同作用催化的。我们显示删除mPGES-1抑制PGE2表达,增加PGI2表达,并且对体内血栓烷生物合成没有影响。最重要的是,mPGES-1缺失既不影响血栓形成也不影响血压。这些结果表明,mPGES-1抑制剂可通过抑制PGE2来保持抗炎功效,同时避免与PGHS-2介导的PGI2抑制相关的不良心血管后果。

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